Erni Muis, Rohaity Ramli, N. Manshoor
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摘要

建立了不同龙脑科植物提取物的HPLC标准色谱条件。本研究的目的是建立一种能够对植物粗提物中低聚二苯乙烯进行较好分离和分离的优化色谱方法。为此,我们选用了五种龙心科植物的提取物模型样品,分别是细叶龙心、卵龙心龙心、细叶龙心龙心和希望龙心龙心。对色谱溶剂类型、流动相洗脱类型、溶剂组成和进样量等参数进行了修改。结果表明:采用梯度洗脱法,溶剂组成H2O: ACN为95:5 ~ 25:75,洗脱时间为20 min,可获得最佳色谱条件。样品浓度为1mg /ml时,进样量为5 μL。温度保持在35℃,流速1.0 ml/min。考虑到一些折衷,例如与针对单一提取物或样品开发的单一方法相比,方法的准确性较低。该方法对同一科不同部位、不同产地的10种提取物进行了试验,结果均为阳性。
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Kaedah KCPT untuk pemisahan oligostilbene dari ekstrak dipterocarpaceae yang berbeza
One standard chromatographic conditions of HPLC was developed for different Dipterocarpaceae plant extracts. The purpose of this study is to achieve an optimized chromatographic method that is able to produce a reasonably good separation and resolution of oligostilbenes in plant crude extracts. For this purpose, five model samples of Dipterocarpaceae extracts, Shorea parvifolia, Shorea ovalis, Dipterocarpus crinitus, Dipterocarpus gracilis and Hopea spp. were used. The parameters, which include types of chromatographic solvents, types of mobile phase elution, solvent composition and the injection volumes, were modified. The results showed that the optimum chromatographic conditions were achieved when a gradient elution was adopted, with the solvent composition of H2O: ACN from 95:5 to 25:75 in 20 minutes. The injection volume of 5 μL is best for a 1 mg/ml sample concentration. The temperature was maintained at 35 °C and the flow rate was at 1.0 ml/min. Some compromises were taken into account such as having less accurate method if compared with a single method developed for single extract or sample. The method showed positive results when tested on 10 extracts of the same family from different plant parts and localities.
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